Finish machining treatment equipment and method for stainless steel pot manufacturing and forming
By setting up a suction chamber and linkage in the stainless steel pot grinding plate, timely adsorption and cleaning of debris during grinding process is achieved, grinding accuracy and equipment stability problems are solved, and the service life of the grinding plate is extended.
Patent Information
- Application Number
- CN202510717091.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-30
- Publication Date
- 2025-07-22
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
When grinding the inner wall of the bottom of the existing stainless steel pot, it is difficult to adsorb the debris in the contact area between the grinding plate and the inner wall of the pot in time, resulting in a decrease in grinding accuracy and unstable equipment operation.
A detachable polishing disc is designed, with a suction chamber and suction hole inside. The linkage drives the polishing disc to generate a negative pressure adsorption force when it rotates, absorbs debris, and cleans the suction hole through the airflow. The linkage includes an eccentric wheel and a sliding rod structure, the aggregate barrel is connected to the adsorption tube, and the vacuum generator provides negative pressure.
It improves grinding accuracy, prevents debris from being blocked, extends the service life of the grinding disc, and enhances the stability of equipment operation and heat dissipation effect.
Smart Images

Figure CN120347646A_ABST
Abstract
Description
Technical Field
[0001] The present invention belongs to the technical field of kitchenware processing, and particularly relates to a stainless steel pot manufacturing, forming and finishing processing equipment and method. Background Art
[0002] With the upgrading of consumption and the popularization of the concept of healthy diet, the market demand for stainless steel pots continues to grow, and most of them are manufactured by die stamping; then, the inner and outer walls of the stamped pots are polished and oiled; the polishing of the inner wall of the bottom of the stainless steel pot body is particularly important, which involves important factors such as whether the pot body is heated evenly and whether the quality is qualified. However, the following problems exist in the process of polishing the inner wall of the bottom of the pot body;
[0003] When polishing the inner wall of the bottom of the stainless steel pot body, after the pot body is fixed on the workbench, the polishing disc penetrates into the pot body for polishing. Although some existing equipment is equipped with a dust suction device to absorb the raised dust and debris, some debris in the contact and polishing area between the polishing disc and the inner wall of the pot is not easily adsorbed and processed in time, which easily causes the accuracy of the polishing disc to deteriorate during the polishing operation, reducing the overall polishing effect. For this reason, we propose a stainless steel pot manufacturing, forming and finishing processing equipment and method to solve the above problems. Summary of the Invention
[0004] The technical problem to be solved by the present invention is to overcome the deficiencies of the prior art and provide a stainless steel pot manufacturing, forming and finishing processing equipment and method that can overcome the above problems or at least partially solve the above problems.
[0005] To solve the above technical problems, the basic concept of the technical solution adopted by the present invention is: a stainless steel pot manufacturing, forming and finishing processing equipment, including a workbench, a stainless steel pot body is arranged on the top surface of the workbench, an installation plate is arranged above the stainless steel pot body, and installation holes are arranged on the surface of the installation plate. The equipment further includes: a detachable polishing disc arranged inside the stainless steel pot body; a material suction cavity is arranged inside the polishing disc, and a material suction hole is opened on the bottom surface of the polishing disc, and the material suction hole is communicated with the material suction cavity; a linkage member is arranged below the installation plate. When the polishing disc rotates, the linkage member is driven to move to extract the dust and debris on the polishing surface at the bottom of the polishing disc, and at the same time, self-cleaning and anti-blocking treatment is carried out on the material suction hole at the polishing disc.
[0006] Preferably, a connection head is fixedly connected to the top surface of the polishing disc, a threaded groove is arranged inside the connection head, the threaded groove is threadedly connected with an output shaft, a limit bolt is arranged on the connection head, an anti-detachment groove is opened on the surface of the output shaft, and one end of the limit bolt penetrates through the connection head and extends into the anti-detachment groove on the output shaft.
[0007] Preferably, a material conveying cavity is formed inside the output shaft. A limiting block is fixedly connected to the surface of the output shaft. The surface of the output shaft is rotationally connected to the mounting plate through a bearing. A driven gear is fixedly connected to the surface of the output shaft. A driving gear meshes with the surface of the driven gear. A driving part is fixedly connected to the center of the driving gear. The driving part is fixedly installed on the surface of the mounting plate.
[0008] Preferably, the linkage member includes an eccentric wheel fixed to the surface of the output shaft. A limiting plate is attached to the surface of the eccentric wheel. A sliding rod is fixedly connected to one side surface of the limiting plate. The sliding rod is slidably connected to the aggregate cylinder. A discharge pipe is fixedly connected to one side surface of the aggregate cylinder. A one-way valve is provided at the connection between the discharge pipe and the aggregate cylinder.
[0009] Preferably, a piston is fixedly connected to the end of the sliding rod. The piston is slidably connected inside the aggregate cylinder. A return spring is fixedly connected between the piston and the aggregate cylinder. The return spring is sleeved on the surface of the sliding rod.
[0010] Preferably, an adsorption pipe is fixedly connected to one side of the aggregate cylinder. A one-way valve is provided at the connection between the adsorption pipe and the aggregate cylinder. The end of the adsorption pipe penetrates through the mounting plate and is fixedly connected to a rotary joint. The rotary joint is installed at one end of the aggregate cylinder. An aggregate cavity is provided inside the aggregate cylinder on one side of the piston.
[0011] Preferably, an air collection cavity is provided inside the aggregate cylinder on the other side of the piston. An air inlet is provided at the other end of the aggregate cylinder. A one-way valve is provided at the air inlet. An air delivery pipe is fixedly connected to the other end of the aggregate cylinder. A one-way valve is provided at the connection between the air delivery pipe and the aggregate cylinder.
[0012] Preferably, a limiting groove is provided at one end of the air delivery pipe. The bottom of the limiting groove is fixedly installed on the bottom surface of the grinding disc. The air outlet of the air delivery pipe extends into the limiting groove. A guide air pipe is provided on the top surface of the grinding disc. An air delivery channel is formed in the bottom inner wall of the grinding disc. The guide air pipe is communicated with the limiting groove and the air delivery channel. The air delivery channel is communicated with the material suction hole.
[0013] Preferably, a clamping groove is formed on the top surface of the workbench. A vacuum generator is embedded on the surface of the clamping groove. An adsorption disc is installed at one end of the vacuum generator. The adsorption disc is fixedly installed on the workbench. A fixing ring is fixedly connected to the surface of the aggregate cylinder. The end of the fixing ring is fixedly connected to the mounting plate.
[0014] A method for using a stainless steel pot manufacturing, forming and finishing processing device mainly includes the following steps:
[0015] Step A: Place the stainless steel pot body to be processed on the workbench in advance, and then fix and limit the stainless steel pot body. During the processing operation, the moving component set on the workbench can drive the mounting plate to move up, down, left, and right, so that the grinding disc can be moved to the inside of the stainless steel pot body near the inner wall of the bottom of the stainless steel pot body. The driving source drives the grinding disc to rotate, thus facilitating the grinding operation on the inner wall of the bottom of the stainless steel pot body;
[0016] Step B: During the grinding process, due to the accumulation of dust and debris generated by grinding inside the stainless steel pot body, when the grinding disc runs, it drives the linkage to run synchronously, which can generate an adsorption force at the bottom of the grinding disc, thus facilitating the adsorption and collection of the dust and debris generated at the grinding contact surface between the bottom surface of the grinding disc and the stainless steel pot body. At the same time, another part of the air collected to generate air flow can be blown towards the suction holes at the grinding disc to clean them.
[0017] After adopting the above technical solutions, the present invention has the following beneficial effects compared with the prior art:
[0018] 1. By setting a detachable grinding disc, the present invention facilitates the installation of different grinding discs according to different pot bodies for grinding operations. The installation is convenient, preventing falling off and loosening. And a material suction structure is arranged inside the grinding disc, so that during the grinding process, the residual debris at the contact part of the grinding area between the grinding disc and the pot body surface can be adsorbed and cleaned in time, improving the accuracy during the grinding process.
[0019] 2. Through the linkage set in the present invention, it is interlinked with the driving source that drives the grinding disc to rotate, so that a negative pressure adsorption force is generated in the internal cavity structure of the grinding disc during the grinding process, thereby timely adsorbing and collecting the residual debris. At the same time, the air flow generated by adsorption can cool the bottom surface of the grinding disc and take away the heat generated by grinding, improving the service life of the grinding disc.
[0020] 3. When the linkage moves in the present invention, another part of the air flow can be collected, then transported through the air pipe and blown towards the grinding disc, and then through the air flow diversion structure, the adsorption holes at the grinding disc are cleaned, effectively avoiding blockage during long-term operation of the device and improving the stability of the equipment operation. BRIEF DESCRIPTION OF THE DRAWINGS
[0021] In the drawings:
[0022] Figure 1 is the overall structural schematic diagram of a stainless steel pot manufacturing, forming and finishing processing equipment proposed by the present invention;
[0023] Figure 2 is the top view structural schematic diagram of a stainless steel pot manufacturing, forming and finishing processing equipment proposed by the present invention;
[0024] Figure 3 Schematic three-dimensional view of the grinding disc mounting structure in a stainless steel pot manufacturing, forming, and finishing processing device proposed by the present invention;
[0025] Figure 4 Proposed by the present invention Figure 3 Enlarged structural view of area A therein;
[0026] Figure 5 Front view sectional structure schematic diagram of a stainless steel pot manufacturing, forming, and finishing processing device proposed by the present invention;
[0027] Figure 6 Proposed by the present invention Figure 5 Enlarged structural view of area B therein;
[0028] Figure 7 Partial sectional three-dimensional structure schematic diagram of the grinding disc in a stainless steel pot manufacturing, forming, and finishing processing device proposed by the present invention;
[0029] Figure 8 Overall top view structure schematic diagram of the grinding disc in a stainless steel pot manufacturing, forming, and finishing processing device proposed by the present invention.
[0030] In the figure: 1, workbench; 2, stainless steel pot body; 3, mounting plate; 31, mounting hole; 4, grinding disc; 41, connecting head; 42, threaded groove; 43, suction hole; 431, suction cavity; 44, limit bolt; 45, output shaft; 451, material conveying cavity; 46, limit block; 47, driven gear; 48, driving gear; 49, driving part; 51, eccentric wheel; 52, limit plate; 53, sliding rod; 54, aggregate cylinder; 55, piston; 56, return spring; 57, discharge pipe; 58, aggregate cavity; 59, adsorption pipe; 591, rotary joint; 61, gas collection cavity; 62, gas transmission pipe; 63, limit groove; 64, air guide pipe; 65, gas transmission channel; 7, fixing ring; 8, card slot; 81, adsorption disc; 82, vacuum generator. Specific embodiments
[0031] The following further elaborates on the present invention in conjunction with the accompanying drawings and embodiments, enabling those skilled in the art to implement it with reference to the text of the specification.
[0032] It should be understood that terms such as "having", "comprising", and "including" as used herein do not exclude the presence or addition of one or more other elements or their combinations.
[0033] In the description of the present invention, the orientation or positional relationship indicated by terms such as "lateral", "longitudinal", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", etc. is based on the orientation or positional relationship shown in the drawings. It is only for the convenience of describing the present invention and simplifying the description, and does not indicate or imply that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be construed as a limitation on the present invention.
[0034] Embodiment 1: Refer to Figures 1 - 8 , a stainless steel pot manufacturing, forming and finishing processing device, including a workbench 1. A stainless steel pot body 2 is arranged on the top surface of the workbench 1. An installation plate 3 is arranged above the stainless steel pot body 2. Installation holes 31 are arranged on the surface of the installation plate 3. It further includes: a detachable grinding disc 4, arranged inside the stainless steel pot body 2; a material suction cavity 431 is arranged inside the grinding disc 4, and a material suction hole 43 is opened on the bottom surface of the grinding disc 4. The material suction hole 43 is communicated with the material suction cavity 431; a linkage member, arranged below the installation plate 3. When the grinding disc 4 rotates, it drives the linkage member to move to extract dust and debris on the bottom grinding surface of the grinding disc 4, and at the same time, self-cleaning and anti-blocking treatment is carried out on the material suction hole 43 at the grinding disc 4.
[0035] The above solution, where a moving part is installed on the workbench 1, and the moving part is fixedly connected to the mounting plate 3. When grinding and processing a stainless steel pot, the moving part (not shown in the figure) includes multiple sets of moving lead screw-slider-rail, motor, and cylinder drive parts, which are used to drive the mounting plate 3 to move up, down, left, and right for adjustment operations. This is prior art and will not be elaborated here. During processing, the stainless steel pot body 2 is pre-placed on the workbench 1, and then the stainless steel pot body 2 is fixed and limited. During processing operations, the moving component set on the workbench 1 can drive the mounting plate 3 to move up, down, left, and right, so that the grinding disc 4 can be moved to the inside of the stainless steel pot body 2 near the inner wall of the bottom of the stainless steel pot body 2. The driving source drives the grinding disc 4 to rotate, which is convenient for grinding the inner wall of the bottom of the stainless steel pot body 2. The detachable grinding disc 4 is provided, which is convenient for installing different grinding discs 4 according to different pot bodies for grinding operations. The installation is convenient, and it can prevent falling off and loosening. Moreover, a material suction structure is provided inside the grinding disc 4, so that during the grinding process of the grinding disc 4, the residual debris at the contact part between the grinding disc 4 and the grinding area on the surface of the pot body can be timely adsorbed and cleaned, improving the accuracy during the grinding process. The linkage part provided makes the driving source that drives the grinding disc 4 to rotate be interconnected, so that a negative pressure adsorption force is generated in the cavity structure inside the grinding disc 4 during the grinding process, thereby timely adsorbing and collecting the residual debris. At the same time, the airflow generated by the adsorption can cool the bottom surface grinding surface of the grinding disc 4 and take away the heat generated by grinding, improving the service life of the grinding disc 4. During the grinding process, due to the accumulation of dust and debris generated by grinding inside the stainless steel pot body 2, when the grinding disc 4 operates, it drives the linkage part to operate synchronously, and an adsorption force can be generated at the bottom of the grinding disc 4, which is convenient for adsorbing and collecting the dust and debris generated at the grinding contact surface between the bottom surface of the grinding disc 4 and the stainless steel pot body 2. At the same time, another part of the outside air can be collected to generate an airflow and blown towards the material suction hole 43 of the grinding disc 4 for cleaning, effectively avoiding blockage during long-term operation of the device and improving the stability of equipment operation.
[0036] Example 2: Refer to Figure 3 、 Figure 4 、 Figure 7 and Figure 8, which is basically the same as Embodiment 1, and furthermore: A connecting head 41 is fixedly connected to the top surface of the grinding disc 4. A threaded groove 42 is provided inside the connecting head 41. The threaded groove 42 is threadedly connected to the output shaft 45. A limit bolt 44 is provided on the connecting head 41. An anti - detachment groove is formed on the surface of the output shaft 45. One end of the limit bolt 44 penetrates through the connecting head 41 and extends into the anti - detachment groove on the output shaft 45. A material - conveying cavity 451 is formed inside the output shaft 45. A limit block 46 is fixedly connected to the surface of the output shaft 45. The surface of the output shaft 45 is rotatably connected to the mounting plate 3 through a bearing. A driven gear 47 is fixedly connected to the surface of the output shaft 45. A driving gear 48 meshes with the surface of the driven gear 47. A driving part 49 is fixedly connected to the center of the driving gear 48. The driving part 49 is fixedly installed on the surface of the mounting plate 3.
[0037] With the above - mentioned solution, during installation, by manually screwing the limit bolt 44 into the anti - detachment groove, it is convenient to fix and limit the grinding disc 4 installed at the end of the output shaft 45, preventing the grinding disc 4 from loosening and falling off during long - term grinding operations, making the structure more stable. At the same time, the output shaft 45 is threadedly connected to the connecting head 41, which is convenient for workers to replace and install the grinding disc 4 according to requirements, making it more convenient and fast to use. During operation, the driving part 49 is started to drive the driving gear 48 to rotate. Through the meshing transmission of the driven gear 47, the output shaft 45 rotates, and then drives the grinding disc 4 to rotate, so that the bottom surface of the grinding disc 4 fits against the inner wall of the bottom of the stainless - steel pot body 2 for grinding operations. The suction cavity 431, the material - conveying cavity 451 and the suction holes 43 inside the grinding disc 4 cooperate with each other to form an adsorption cavity. When the output shaft 45 rotates, it is linked with the linkage part, and thus an adsorption force is generated at the suction cavity 431 inside the grinding disc 4. During the grinding process of the grinding disc 4, the dust and debris generated at the grinding surface can be timely adsorbed and collected. In this way, it is avoided that the grinding debris remains between the grinding disc 4 and the inner wall of the stainless - steel pot body 2, affecting the grinding effect of the grinding disc 4, further improving the grinding accuracy of the grinding disc 4, and at the same time avoiding excessive dust and debris from generating a dust - raising phenomenon. Compared with the prior art where the grinding disc 4 only has a grinding function, it also has a material - suction function, which effectively improves the processing accuracy of the device for processing some workpieces with specific shapes.
[0038] It should be noted that the driving part 49 can be replaced by a servo motor for driving.
[0039] Embodiment 3: Refer to Figure 4 、 Figure 5 and Figure 6, which is basically the same as Embodiment 2, and furthermore: The linkage member includes an eccentric wheel 51 fixed on the surface of the output shaft 45. A limiting plate 52 is attached to the surface of the eccentric wheel 51. One side of the limiting plate 52 is fixedly connected to a sliding rod 53. The sliding rod 53 is slidably connected to the aggregate cylinder 54. One side of the aggregate cylinder 54 is fixedly connected to a discharge pipe 57. A one-way valve is provided at the connection between the discharge pipe 57 and the aggregate cylinder 54. The end of the sliding rod 53 is fixedly connected to a piston 55. The piston 55 is slidably connected inside the aggregate cylinder 54. A return spring 56 is fixedly connected between the piston 55 and the aggregate cylinder 54. The return spring 56 is sleeved on the surface of the sliding rod 53. One side of the aggregate cylinder 54 is fixedly connected to an adsorption pipe 59. A one-way valve is provided at the connection between the adsorption pipe 59 and the aggregate cylinder 54. The end of the adsorption pipe 59 penetrates through the mounting plate 3 and is fixedly connected to a rotary joint 591. The rotary joint 591 is installed at one end of the aggregate cylinder 54. An aggregate chamber 58 is provided inside the aggregate cylinder 54 on one side of the piston 55.
[0040] With the above scheme, the eccentric wheel 51 is fixed on the surface of the aggregate cylinder 54. When the aggregate cylinder 54 rotates, it squeezes the limiting plate 52, thereby causing the piston 55 to reciprocate inside the aggregate cylinder 54. The adsorption pipe 59 is connected to one end of the aggregate cylinder 54 and is communicated with the adsorption cavity structure at the grinding disc 4, providing the power for adsorption for the grinding disc 4. Then, the adsorbed dust and debris are collected into the aggregate chamber 58 and finally discharged through the discharge pipe 57. One end of the discharge pipe 57 is connected to the collection box, which is convenient for storing the collected stainless steel debris. Due to the airflow generated by the negative pressure, when the airflow passes through the suction holes 43, it can take away the heat generated by the friction on the bottom surface of the grinding disc 4, reduce the thermal deformation of the workpiece, and at the same time extend the service life of the grinding disc 4.
[0041] Embodiment 4: Refer to Figure 6 、 Figure 7 and Figure 8, which is basically the same as Embodiment 3. Further: A gas collecting cavity 61 is provided on the other side of the piston 55 inside the aggregate cylinder 54. An air inlet is provided at the other end of the aggregate cylinder 54, and a one-way valve is provided at the air inlet. The other end of the aggregate cylinder 54 is fixedly connected with an air delivery pipe 62. A one-way valve is provided at the connection between the air delivery pipe 62 and the aggregate cylinder 54. A limiting groove 63 is provided at one end of the air delivery pipe 62. The bottom of the limiting groove 63 is fixedly installed on the bottom surface of the grinding disc 4. The air outlet of the air delivery pipe 62 extends into the limiting groove 63. An air guide pipe 64 is provided on the top surface of the grinding disc 4. An air delivery channel 65 is opened on the bottom inner wall of the grinding disc 4. The air guide pipe 64 is communicated with the limiting groove 63 and the air delivery channel 65. The air delivery channel 65 is communicated with the material suction hole 43. A clamping groove 8 is opened on the top surface of the workbench 1. A vacuum generator 82 is embedded on the surface of the clamping groove 8. One end of the vacuum generator 82 is provided with a suction disc 81. The suction disc 81 is fixedly installed on the workbench 1. A fixing ring 7 is fixedly connected to the surface of the aggregate cylinder 54. The end of the fixing ring 7 is fixedly connected to the mounting plate 3.
[0042] With the above scheme, when the piston 55 reciprocally slides inside the aggregate cylinder 54, the external air is collected at the gas collecting cavity 61 and then conveyed to the limiting groove 63 through the air delivery pipe 62. Among them, the top diameter of the air guide pipe 64 is larger than the bottom diameter, presenting a flared shape, which is convenient for the air flow to enter better. After passing through the air delivery channel 65, it blows towards the middle area of the material suction hole 43, thereby avoiding the occurrence of blockage at the material suction hole 43, improving the stability of the material suction of the grinding disc 4, making the grinding disc 4 have a cleaning effect. Due to the setting of the air delivery channel 65, the air circulation is increased, and further the heat dissipation effect of the grinding disc 4 is increased.
[0043] It should be noted that when the grinding disc 4 rotates, since there are two air guide pipes 64, when the air flow sprays out from one end of the air delivery pipe 62, it just sprays towards the air inlet at the top of the air guide pipe 64, so that the air flow is conveyed to the air delivery channel 65 through the air guide pipe 64. During installation, the vacuum generator 82 is attached to the bottom surface of the stainless steel pot body 2. By starting the suction disc 81, negative pressure is generated at the vacuum generator 82, thereby adsorbing and fixing the stainless steel pot body 2 to prevent displacement and avoid damage to the stainless steel pot body 2 during fixation, while providing a good fixing and limiting effect.
[0044] The above embodiments only represent several implementation manners of the present invention. The description is relatively specific and detailed, but it cannot be understood as a limitation to the scope of the invention patent. It should be pointed out that for those of ordinary skill in the art, without departing from the concept of the present invention, several deformations and improvements can be made. These are all equivalent modifications and evolutions made to the above embodiments based on the essence of the present invention, and these all belong to the protection scope of the present invention.
Claims
1. A stainless steel pot manufacturing, forming and finishing processing device, including a workbench (1), the top surface of the workbench (1) is provided with a stainless steel pot body (2), above the stainless steel pot body (2) is provided with a mounting plate (3), the surface of the mounting plate (3) is provided with mounting holes (31), characterized in that, Further included are: A detachable grinding disc (4), which is arranged inside the stainless steel pot body (2); A material suction cavity (431) is arranged inside the grinding disc (4), and a material suction hole (43) is formed on the bottom surface of the grinding disc (4), and the material suction hole (43) communicates with the material suction cavity (431); A linkage member is arranged below the mounting plate (3). When the grinding disc (4) rotates, it drives the linkage member to move for extracting dust and debris on the bottom grinding surface of the grinding disc (4), and at the same time, self-cleaning and anti-blocking treatment is performed on the material suction hole (43) at the grinding disc (4).
2. The finishing processing equipment for manufacturing and forming a stainless steel pot according to claim 1, characterized in that, A connecting head (41) is fixedly connected to the top surface of the grinding disc (4). A threaded groove (42) is arranged inside the connecting head (41), and the threaded groove (42) is threadedly connected to the output shaft (45). A limit bolt (44) is arranged on the connecting head (41). An anti-slip-off groove is formed on the surface of the output shaft (45), and one end of the limit bolt (44) penetrates through the connecting head (41) and extends into the anti-slip-off groove on the output shaft (45).
3. A finishing processing device for manufacturing and forming a stainless steel pot according to claim 2, characterized in that, A material conveying cavity (451) is arranged inside the output shaft (45). A limit block (46) is fixedly connected to the surface of the output shaft (45). The surface of the output shaft (45) is rotatably connected to the mounting plate (3) through a bearing. A driven gear (47) is fixedly connected to the surface of the output shaft (45), and a driving gear (48) meshes with the surface of the driven gear (47). A driving part (49) is fixedly connected to the center of the driving gear (48), and the driving part (49) is fixedly installed on the surface of the mounting plate (3).
4. A finishing processing device for manufacturing and forming a stainless steel pot according to claim 3, characterized in that, The linkage member includes an eccentric wheel (51) fixed to the surface of the output shaft (45). A limiting plate (52) is attached to the surface of the eccentric wheel (51). A sliding rod (53) is fixedly connected to one side surface of the limiting plate (52). The sliding rod (53) is slidably connected to the aggregate cylinder (54). A discharge pipe (57) is fixedly connected to one side surface of the aggregate cylinder (54), and a one-way valve is arranged at the connection between the discharge pipe (57) and the aggregate cylinder (54).
5. A finishing processing device for manufacturing and forming a stainless steel pot according to claim 4, characterized in that, A piston (55) is fixedly connected to the end of the sliding rod (53). The piston (55) is slidably connected inside the aggregate cylinder (54). A return spring (56) is fixedly connected between the piston (55) and the aggregate cylinder (54), and the return spring (56) is sleeved on the surface of the sliding rod (53).
6. The finishing processing equipment for manufacturing and forming a stainless steel pot according to claim 5, characterized in that, An adsorption pipe (59) is fixedly connected to one side of the aggregate cylinder (54). A one-way valve is arranged at the connection between the adsorption pipe (59) and the aggregate cylinder (54). The end of the adsorption pipe (59) penetrates through the mounting plate (3) and is fixedly connected to a rotary joint (591). The rotary joint (591) is installed at one end of the aggregate cylinder (54). An aggregate cavity (58) is arranged inside the aggregate cylinder (54) on one side of the piston (55).
7. An equipment for manufacturing, forming, and finishing a stainless steel pot according to claim 6, characterized in that, On the other side of the piston (55) inside the aggregate cylinder (54), there is an air collecting chamber (61). At the other end of the aggregate cylinder (54), there is an air inlet, and a one-way valve is arranged at the air inlet. The other end of the aggregate cylinder (54) is fixedly connected with an air delivery pipe (62), and a one-way valve is arranged at the connection between the air delivery pipe (62) and the aggregate cylinder (54).
8. A finishing processing device for manufacturing and forming a stainless steel pot according to claim 7, characterized in that, One end of the air delivery pipe (62) is provided with a limit groove (63). The bottom of the limit groove (63) is fixedly installed on the bottom surface of the grinding disc (4). The air outlet of the air delivery pipe (62) extends into the limit groove (63). A gas guide pipe (64) is arranged on the top surface of the grinding disc (4). An air delivery channel (65) is opened on the bottom inner wall of the grinding disc (4). The gas guide pipe (64) is communicated with the limit groove (63) and the air delivery channel (65). The air delivery channel (65) is communicated with the material suction hole (43).
9. A finishing processing device for manufacturing and forming a stainless steel pot according to claim 8, characterized in that, A clamping groove (8) is opened on the top surface of the workbench (1). A vacuum generator (82) is embedded on the surface of the clamping groove (8). One end of the vacuum generator (82) is provided with an adsorption disc (81). The adsorption disc (81) is fixedly installed on the workbench (1). A fixing ring (7) is fixedly connected to the surface of the aggregate cylinder (54). The end of the fixing ring (7) is fixedly connected to the mounting plate (3).
10. A method of using an apparatus for manufacturing, forming, and finishing a stainless steel pot, according to claim 8, an apparatus for manufacturing, forming, and finishing a stainless steel pot, characterized in that, It mainly includes the following steps: Step A: Place the stainless steel pot body (2) to be processed on the workbench (1) in advance, and then fix and limit the stainless steel pot body (2). During the processing operation, the moving assembly arranged on the workbench (1) can drive the mounting plate (3) to move up, down, left and right, so that the grinding disc (4) can be moved to the inside of the stainless steel pot body (2) near the bottom inner wall of the stainless steel pot body (2). Drive the grinding disc (4) to rotate through the driving source, so as to facilitate the grinding operation on the bottom inner wall of the stainless steel pot body (2). Step B: During the grinding process, since dust and debris generated by grinding accumulate inside the stainless steel pot body (2), when the grinding disc (4) runs, it drives the linkage part to run synchronously, and an adsorption force can be generated at the bottom of the grinding disc (4), so as to facilitate the adsorption and collection of dust and debris generated at the grinding contact surface between the bottom surface of the grinding disc (4) and the stainless steel pot body (2). At the same time, another part of the air flow generated by collecting the outside air can be blown to the material suction hole (43) at the grinding disc (4) for cleaning.